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Strength and Heat of Hydration01:29

Strength and Heat of Hydration

223
The hydration of cement is an exothermic reaction in which heat is generated as cement hydrates. This heat of hydration is critical to cement's strength development. The rate at which this heat is generated affects the temperature rise, with a majority of the heat being released early in the hydration process, half within the first three days, and about 75% within the first week.
The heat of hydration for each cement compound is significant; for instance, tricalcium aluminate (C3A) and...
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Accelerators01:17

Accelerators

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Accelerators in concrete serve as admixtures to speed up the hardening process, enabling the concrete to achieve early strength faster. Although accelerators do not necessarily impact the time it takes concrete to set, they reduce this time in practice. A common accelerator is calcium chloride, which is particularly useful for hastening early strength development in cold weather or for rapid repair jobs that require quick heat generation after mixing.
The effectiveness of calcium chloride can...
71
Transmission Line Design Considerations01:23

Transmission Line Design Considerations

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Aluminum has become the material of choice for overhead transmission lines, surpassing copper due to its abundance and cost-effectiveness. The most prevalent type is the aluminum conductor, steel-reinforced (ACSR), which combines aluminum strands around a steel core. Other variants include all-aluminum conductors (AAC), all-aluminum alloy conductors (AAAC), aluminum conductor alloy-reinforced (ACAR), and aluminum-clad steel conductors. Advanced designs, such as aluminum conductors with steel...
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Metallic Solids02:37

Metallic Solids

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Metallic solids such as crystals of copper, aluminum, and iron are formed by metal atoms. The structure of metallic crystals is often described as a uniform distribution of atomic nuclei within a “sea” of delocalized electrons. The atoms within such a metallic solid are held together by a unique force known as metallic bonding that gives rise to many useful and varied bulk properties.
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and malleability....
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Stress Concentrations01:24

Stress Concentrations

276
Stress concentration is when stress intensifies near discontinuities such as holes or abrupt cross-sectional changes in a structural member. This localized stress can often surpass the average stress within the member. The stress distribution in flat bars, either with a circular hole or varying widths connected by fillets, can be determined experimentally using a photoelastic method. The results are based on ratios of geometric parameters like the ratio of the hole's radius to the smaller...
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Prestressed Concrete01:20

Prestressed Concrete

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Prestressed concrete is a construction technique designed to enhance the strength and durability of concrete structures. This method involves the application of a pre-set tension to high-strength steel strands used as reinforcement before the concrete is subjected to its working loads. The primary aim of prestressing is to place the concrete in a state of compression, in order to counteract the tensile forces it will experience in service. This pre-compression helps prevent crack formation in...
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相关实验视频

Updated: Jun 16, 2025

Indirect Fabrication of Lattice Metals with Thin Sections Using Centrifugal Casting
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轻量级单相复杂缩合金,以Al为基础,具有高特异强度.

Mingliang Han1,2,3, Yuan Wu4,5, Xiaobin Zong1

  • 1State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing, 100083, China.

Nature communications
|August 18, 2024
PubMed
概括

研究人员使用高压和高温开发出一种轻质,强的合金. 这种新型面中心立方单相合金为节能结构材料提供了增强的机械性能.

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An Available Technique for Preparation of New Cast MnCuNiFeZnAl Alloy with Superior Damping Capacity and High Service Temperature
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相关实验视频

Last Updated: Jun 16, 2025

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科学领域:

  • 材料科学 材料科学 材料科学
  • 金工业是金工业的一个方面.
  • 固态物理 固态物理

背景情况:

  • 对节能结构材料的日益增长的需求需要轻质但强大的合金.
  • 基于 (Al) 的合金是可取的,但由于较轻元素的溶解性较差而受到限制.
  • 开发基于Al的复杂缩合金 (CCA) 面临着脆弱相形成的挑战.

研究的目的:

  • 为了克服基于Al的合金中的可溶性限制.
  • 开发一个单相,轻量级和高强度的基于Al的CCA.
  • 探索高压和高温对合金相位形成和性能的影响.

主要方法:

  • 高压和高温对基于Al的合金组合物的应用.
  • 一个面部为中心的立方单相基于Al的CCA (Al55Mg35Li5Zn5) 的合成.
  • 合金密度的表征,特异性强度和潜在的强化机制.

主要成果:

  • 成功开发了一种单相基于Al的CCA,密度为2.40g/cm3.
  • 达到344×103N·m/kg的高特异性强度,明显超过传统合金.
  • 确定了减少原子大小/电子阴性差异和协同高效应作为单相形成的关键因素.

结论:

  • 高压和高温可以通过超越可溶性极限,形成单相基于Al的CCA.
  • 由于固体溶液的强化和纳米级化学波动,开发的合金表现出优越的特异性强度.
  • 这种方法为发现具有增强性质的新型轻型CCA提供了一条途径.